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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Incorporation of coenzyme q10 into bovine oocytes improves mitochondrial features and alleviates the effects of summer thermal stress on developmental competence
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Incorporation of coenzyme q10 into bovine oocytes improves mitochondrial features and alleviates the effects of summer thermal stress on developmental competence

机译:将辅酶q10掺入牛卵母细胞可改善线粒体功能并减轻夏季热应激对发育能力的影响

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摘要

Environmental stress-induced alterations in oocyte mitochondria are suggested to deleteriously affect developmental competence of the ovarian pool of oocytes. We examined the association between seasonal effects on oocyte developmental competence and mitochondrial distribution, polarization, mitochondrial DNA (mtDNA) content, and RNA expression, and whether the incorporation of coenzyme Q10 (CoQ10) might improve these effects. Bovine oocytes were collected during the summer (June-August), fall (September-November), and winter (December-May), matured in vitro with or without 50 lM CoQ10, fertilized, and cultured for 8 days. The proportion of developed blastocysts was highest in the winter, intermediate in the fall, and lowest in the summer. Matured oocytes were classified into categories I-IV according to their mitochondrial distribution pattern (MitoTracker green). The proportion of highand low-polarized mitochondria (JC-1 assay) differed between oocyte categories but was not affected by season. On the other hand, oocyte distribution into categories differed between seasons and was affected by CoQ10, with an increased proportion of category I oocytes in the fall. Oocyte mtDNA did not differ between seasons, but expression of mitochondrionassociated genes involved in the respiratory chain (ND2, SDHD, CYTB, COXII, ATP5B, and TFAM) did. Coenzyme Q10 increased the expression of CYTB, COXII, and ATP5B and the proportions of blastocysts developed in the fall. In summary, season-induced alterations in mitochondrial functions might explain, in part, the reduced oocyte developmental competence. It seems that in the fall, under modest harm, CoQ10 incorporation can alleviate these deleterious effects somewhat.
机译:环境压力引起的卵母细胞线粒体的改变被认为有害地影响卵母细胞卵巢池的发育能力。我们检查了对卵母细胞发育能力的季节性影响与线粒体分布,极化,线粒体DNA(mtDNA)含量和RNA表达之间的关联,以及掺入辅酶Q10(CoQ10)是否可以改善这些影响。在夏季(6月至8月),秋季(9月至11月)和冬季(12月至5月)收集牛卵母细胞,在有或没有50μMCoQ10的条件下进行体外成熟,受精并培养8天。发育中的胚泡比例在冬季最高,在秋季中等,在夏季最低。根据成熟的卵母细胞的线粒体分布模式(MitoTracker green)将其分类为I-IV类。卵母细胞类别之间的高极化线粒体和低极化线粒体的比例有所不同,但不受季节的影响。另一方面,不同季节之间卵母细胞的分布有所不同,并且受辅酶Q10的影响,秋季时I类卵母细胞的比例增加。卵母细胞mtDNA在不同季节之间没有差异,但是与呼吸链有关的线粒体相关基因(ND2,SDHD,CYTB,COXII,ATP5B和TFAM)的表达却有所不同。辅酶Q10增加CYTB,COXII和ATP5B的表达,并在秋季形成胚泡的比例。总而言之,季节引起的线粒体功能改变可能部分解释了卵母细胞发育能力降低。似乎在秋天,在适度损害下,加入CoQ10可以一定程度减轻这些有害影响。

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